会议安排:
4月9日-13日:基础理论培训(上午09:00-11:30,下午14:00-16:30)
- The system view with integrated design of embedded power systems. 嵌入式能源伺服作动系统总体设计概述
- Requirements of the embedded power systems. 嵌入式能源伺服作动系统设计需求
- Detailed Architectures of the embedded power systems. 嵌入式能源伺服作动系统详细架构
- Modeling and simulation of the embedded power systems. 嵌入式能源伺服作动系统建模与仿真
- Power sizing analysis of the embedded power systems. 嵌入式能源伺服作动系统功率等级分析
- Dynamic analysis and control of the embedded power systems. 嵌入式能源伺服作动系统动态分析
- Case study: based on A340. 基于空客A340的案例分析
- Evolution to the more electrical aircraft. 更多航空电器系统的发展趋势
4月16日-20日:嵌入式能源伺服作动系统应用培训(上午09:00-11:30,下午14:00-16:30)
- Introduction of EHA principle, history of development and aerospace realizations. EHA的原理、开发历史以及在航天航空上的实施
- Basic modeling of EHAs. EHA的基本建模
Making the EHA more realistic, introduction of secondary functions. 提高EHA仿真的真实性,辅助功能的介绍
- Model analysis. 模型分析
- Friction modeling and simulation, friction models for hydraulic components. 摩擦建模和仿真,液压元件的摩擦模型
- Implementation of friction models to get realistic friction in the EHA models. 摩擦模型的应用:在EHA模型中考虑真实的摩擦特性。
- structural effects, computer control, power limitation.结构的影响,计算机控制以及功率限制
- Introduction of EMA principle, history of development and aerospace realisations.EMA原理、开发历史以及在航天航空上的实施
- Basic modeling of EMAs. Performance analysis. Major effects. EMA的基本建模。性能分析以及主要的影响因素
- Making the EMA more realistic, introduction of friction and transmission compliance. 提高EMA仿真的真实性,摩擦介绍以及传动柔度考虑
- Modes of operation. 工作模式
- Advanced models of EMAs. Clutches, brakes, structural compliance. 高级EMA模型,包括离合器、制动器以及结构柔度
- Hybrid EMA-EHA simulation. Force fighting and force equalization in damping mode. EMA-EHA混合仿真。力纷争以及在阻尼模式下的力平衡